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Pharmacokinetics of codeine after single- and multiple-oral-dose administration to normal volunteers.

The pharmacokinetics of codeine, codeine glucuronide, morphine, and morphine glucuronide were assessed after single- (60 mg) and multiple-dose (60 mg every six hours for nine doses) oral administration of codeine sulfate to six normal volunteers. Multiple blood and urine samples were collected after administration of the single- and last multiple-oral doses. Drug concentrations were analyzed using radioimmunoassay techniques. No significant alterations in codeine pharmacokinetics were noted after multiple-dose oral administration. However, accumulation of morphine during multiple dosing was significant (AUC24 = 102 +/- 33 ng/mL/hr after single dose versus 212 +/- 118 ng/mL/hr after the last multiple dose). Peak concentration and AUC24 data for morphine glucuronide indicated that significant accumulation of this compound occurs upon multiple-dose administration. These data indicate that morphine and morphine glucuronide serum concentrations are significantly increased during chronic oral codeine therapy and suggest that morphine, and perhaps morphine glucuronide, contribute significantly to the analgesic activity of chronic oral codeine therapy.

Adult

Double-blind parallel comparison of ketoprofen (Orudis), acetaminophen plus codeine, and placebo in postoperative pain.

One hundred sixty-one patients with postoperative pain were treated at a single center in a double-blind, randomized, parallel study designed to compare the efficacy and safety of single oral doses of ketoprofen (50 and 150 mg), an acetaminophen (650 mg) plus codeine (60 mg) combination, and placebo. From 1 through 4 hours after administration of the study drugs, the mean summed pain intensity difference (SPID) and time-weighted total pain relief (TOPAR) scores for the three active treatments generally were significantly (P less than 0.05) higher than those for placebo but not significantly different from each other. At the 6-hour evaluation, the ketoprofen groups, but not the acetaminophen-codeine group, had higher (P less than 0.05) mean SPID and TOPAR scores than the placebo group, as a result of a shorter duration of pain relief in the acetaminophen-codeine group. The 6-hour TOPAR scores were significantly (P less than 0.05) higher for both ketoprofen groups than for the acetaminophen-codeine group; the ketoprofen 150 mg group also had significantly (P less than 0.05) higher mean 6-hour SPID and global subjective assessment scores. As a result of a higher frequency of somnolence, there was a significantly (P less than 0.05) greater incidence of central nervous system adverse drug reactions among patients treated with acetaminophen plus codeine than among those treated with 150 mg of ketoprofen. These results indicate that the analgesic efficacy of both 50 and 150 mg doses of ketoprofen equals that of acetaminophen 650 mg plus codeine 60 mg and the duration of the analgesic effect of ketoprofen is significantly longer.

Acetaminophen

Evaluation of teratogenic potential codeine sulfate in CF-1 mice.

The most prominent defect of codeine sulfate, 100 mg/kg sc, was delayed ossification of the supraoccipital bone, paws, xiphoid, and sternebrae as well as other sternebral defects such as checkerboard sternebrae and polysternebrae. Although these anomalies were similar to the minor defects seen in the fetuses of morphine sulfate-treated mice, the major anomalies such as exencephaly, cryptorchid testes, and rib and vertebral fusions produced by morphine were not present in the fetuses of mice challenged with codeine. Thus, codeine sulfate appears to be less teratogenic than morphine sulfate. A review of the incidences of the various defects in mice treated on a single day with codeine showed that there was a range of days on which the mouse fetus was susceptible to codeine's teratogenic effects, with the most critical days of gestation being Days 8-10. Furthermore, a comparison of the defects that occurred in those treated on both Days 8 and 9 with the defects that occurred in those treated on a single day of gestation reveals an additive or cumulative teratogenic response to codeine.

Animals

Solid-state esterification of codeine phosphate by the acid constituent of effervescent tablets.

Codeine phosphate in a paracetamol:codeine effervescent tablet was found to react at room temperature and 37 degrees C with the citric acid constituent to form citrate esters of codeine. The esterification was confirmed in a solid-state reaction at elevated temperature. The structures of the three possible monosubstituted esters (1-3) were elucidated from spectroscopic data (nuclear magnetic resonance and mass spectrometry) and by selective hydrolysis of the dimethyl esters to give symmetrical and asymmetrical dimethyl citrates. In the degradation reaction, formation of the symmetrically substituted citrate ester of codeine, 1, was found to predominate. Tartaric acid, which can be used in effervescent tablet formulations, was also found to give an ester with codeine phosphate in a similar nonsolvolytic reaction. A liquid chromatographic method was developed for the separation of the citrate esters of codeine.

Chemical Phenomena

A dose-ranging study of the pharmacokinetics of codeine phosphate following intravenous administration to rats.

The linearity of the pharmacokinetics of codeine was examined in male Sprague-Dawley rats given iv bolus doses of 1, 1.5, 3, and 4 mg/kg of codeine phosphate. Codeine and morphine were determined in serial blood samples utilizing HPLC with electrochemical detection. Codeine exhibits characteristics consistent with a two-compartment pharmacokinetic model. The kinetics of codeine are linear in the iv dose range 1-4 mg/kg. The ratio AUCmorphine:AUCcodeine increases disproportionately with increasing doses of codeine.

Animals

Impact of environmental and genetic factors on codeine analgesia.

The polymorphic cytochrome P-450 DB1 (P-450 IID6) is responsible for the O-demethylation of codeine to morphine by human liver microsomes. The influence of P-450 DB1 variable activity on the bioactivation of codeine in vivo to morphine and on its analgesic effect was investigated in phenotyped healthy volunteers--7 extensive [EM] and 1 poor [PM] metabolizer of debrisoquine. After pretreatment with oral placebo or quinidine sulphate 50 mg, codeine phosphate 100 mg or placebo were administered orally according to a double-blind randomized crossover design. In EM subjects the plasma morphine Cmax was 17.9 nmol/l, whereas virtually no morphine was detectable after quinidine pretreatment (1.5 nmol/l), and in the PM subject (0.60 nmol/l). In EM codeine significantly increased subjective (VAS) and objective (R-III reflex) pain thresholds in response to selective transcutaneous nerve stimulation, whereas no significant analgesia was detected after placebo, or after codeine with quinidine pretreatment, or in the PM. In PM of genetic origin, or due to environmental alteration of the phenotypic expression (i.e. drug interaction), codeine is not activated into morphine and is an inefficient analgesic.

Administration, Oral

Codeine-induced memory changes: nature and relationship to opiate system.

Learning and recall processes were studied in three experiments with 33 subjects, 1 and 3 h after oral administration of codeine phosphate 25 mg, 50 mg and 100 mg. Recall was measured 3 and 24 h after drug administration. Nine subjects received naloxone i.m. with the 50 mg dose of codeine. Learning and memory were assessed by using associative, serial and concept learning tasks. Flicker fusion frequency was measured to assess the general vigilance level of the subjects. Learning performance in the serial learning task was improved 3 h after administration of codeine 100 mg. Recall in the serial learning task was also improved after codeine 25 mg, but only when the material was learnt after 1 hour and was recalled 24 h after drug intake. To demonstrate the enhanced recall both learning and recall had to take place under the same drug condition. The same test showed a tendency to enhanced recall after codeine 50 mg of material learnt 1 hour after drug intake and recalled 24 h later. This effect was counteracted by naloxone. The data are consistent with the hypothesis that codeine may exert its action via opiate receptors and that this system participates in memory functions.

Adult

Paracetamol plus supplementary doses of codeine. An analgesic study of repeated doses.

A double-blind, multicentre analgesic trial was carried out in patients suffering from pain after removal of an impacted lower wisdom tooth. 266 patients were evaluated after random allocation to treatment with paracetamol 500 mg, paracetamol 500 mg plus codeine 20 mg, paracetamol 500 mg plus codeine 30 mg, or paracetamol 500 mg plus codeine 40 mg. On the day of surgery the patients assessed their own pain intensity hourly on a visual analogue scale. The analysis of the results was carried out according to the method which considered repeated dose intake. A statiscally significant dose-response relationship was obtained between the supplementary doses of codeine and analgesic efficacy. In the comparison of side effects, their frequency increased with increasing amounts of codeine. In clinical practice codeine 30 mg appeared to be the optimal supplement for paracetamol 500 mg.

Acetaminophen

Codeine O-demethylation: rat strain differences and the effects of inhibitors.

The oxidative metabolism of more than 20 drugs (e.g. sparteine, debrisoquine, dextromethorphan) is mediated by cytochrome P450IID6. Codeine O-demethylation to morphine was recently demonstrated to co-segregate with the polymorphic metabolism of debrisoquine and dextromethorphan. The female Dark-Agouti rat (DA) is an animal model for the poor metabolizer phenotype (PM) using debrisoquine or dextromethorphan as substrates. Studies were carried out to evaluate codeine metabolism in liver microsomes from female DA and Sprague-Dawley (SD) rats. The intrinsic clearance of codeine to morphine was 10-fold lower in DA rats due to a 5-fold higher Km (287 vs 49 microM) and a 2-fold lower Vmax (48 vs 94 nmol/mg/hr). Nineteen drugs were tested for inhibition of codeine O-demethylation. The four most potent competitive inhibitors were dextromethorphan (Ki = 2.53 microM), propafenone (Ki = 0.58 microM), racemic methadone (Ki = 0.3 microM) and quinine (Ki = 0.07 microM). The differences in morphine formation from codeine between SD and DA rats and the inhibition results show that this animal model appears to be a suitable model for the human EM and PM phenotypes, respectively. These strains could be used to study the pharmacodynamic consequences of the genetic polymorphism in codeine O-demethylation, and the effects of metabolic inhibitors. The outcome of these studies could impact on the therapy of pain control.

Animals

Endogenous codeine: autocrine regulator of catecholamine release from chromaffin cells.

In addition to the catecholamines (CAs) dopamine (DA), norepinephrine (NE) and epinephrine (E), perifused chromaffin cells of the eel secrete codeine and morphine. In controls, the release of NE and E is strongly correlated, while there is no correlation with DA. Low, physiological concentrations of codeine (500 pg/ml) reduce the release of NE and E, while 8-fold higher concentrations stimulate an instant, transitory release of all three CAs. Much higher concentration of codeine (100 ng/ml), corresponding to the therapeutically effective range in the human, again reduce the release of NE and E. Physiological and very high concentrations of morphine have no clear effect on CA release, while an intermediate concentration (38 ng/ml) increases the secretion of all three CAs. The opiate antagonist naloxone lowers the basal CA secretion and prevents the morphine-induced CA increase. During naloxone perifusion, a normally non-effective concentration (40 ng/ml) of codeine reduces the CA release. It appears that codeine is an autocrine regulator which suppresses CA release via naloxone-insensitive receptors, and stimulates CA release via opiate receptor(s). Co-released morphine may modulate the action of codeine.

Anguilla

Tolerance and evidence of physical dependence to daily codeine injections in the rat.

Core temperatures, measured by telemetry, and acquisition of food pellets on a continuous reinforcement schedule were recorded every 30 min in unrestrained male rats given saline for 5 days before and 5 days after 10 daily SC injections of codeine phosphate (200 mg/kg) at 08:00 hr. After the first codeine injection rats were immobile, slightly catatonic, breathed shallowly and had elevated core temperatures, loss of body weight and inhibition of feeding activity. As injections of codeine were repeated, the initial depressant signs decreased and the period of inhibited feeding was replaced by prolonged (greater than 8 hr) post-injection bouts of feeding activity (stimulated feeding) during daylight hours. Core temperatures remained elevated during this phase of drug-induced feeding activity. Mean body weight and 24-hr food intake remained below control levels over the 10-day codeine period as diurnal feeding patterns became reversed. On the first withdrawal day core temperatures declined and feeding patterns changed from those responses on the last codeine day as the rats lost body weight and were hyperirritable. As withdrawal continued core temperature and feeding patterns began to resemble those of the saline control period, body weights increased and hyperirritability subsided. In this study, tolerance and evidence of physical dependence to daily injections of codeine could be demonstrated in rats by continuous monitoring of their diurnal feeding and temperature responses.

Animals

Codeine analgesic and morphine hyperalgesic effects on thermal nociception in domestic fowl.

The effects of codeine phosphate and morphine sulfate (2.5, 15.0, and 30 mg/ml/kg; IM) on latency of a jump response elicited by a noxious (61 degrees C) thermal stimulus were studied in White Leghorn cockerels at 15-16 days posthatch. Codeine induced a significant dose-dependent increase in jump response latency (analgesic effect), whereas morphine at each dose induced a significant decrease in jump response latency (hyperalgesic effect). Naloxone (5 mg/ml/kg) reversed the hyperalgesic effect of morphine (30 mg/ml/kg) and potentiated codeine analgesic effects. It is unlikely that codeine analgesic effects in domestic fowl reflect demethylation of codeine to morphine. These opposite codeine and morphine effects may reflect the interaction of these opiates at different populations of opioid receptors or at different substrates.

Analgesics

Discrimination between urticaria-prone and other allergic patients by intradermal skin testing with codeine.

To study the ability of cutaneous mast cells to degranulate in urticaria-prone patients, subjects were skin tested with the known mast cell degranulator, codeine sulfate. Sensitivity to codeine as determined by the concentrations of codeine necessary to cause a net wheal of 5 mm was compared between urticaria-prone subjects, allergic subjects, and normal control subjects. Urticaria-prone subjects were more sensitive to codeine at every concentration tested and exhibited a mean reactivity to codeine that was almost 100 times that of the other allergic individuals and normal control subjects. This difference could not be explained by an increased sensitivity to histamine in 71% of urticaria-prone patients nor by any dermatographic tendencies or increased relative allergic reactivity. These findings suggest that codeine skin testing can be used to identify a distinct population of patients with urticaria.

Adult

Fibrin formation during ongoing cutaneous allergic reactions: comparison of responses to antigen and codeine.

BACKGROUND: Fibrin formation, assessed by fibrinopeptide A levels, was evaluated over a 5-hour period at skin chamber sites challenged continuously with pollen antigen or codeine in 10 reactive individuals. METHODS: The levels of fibrinopeptide A at antigen sites were compared with those at sites challenged with buffer diluent alone or with codeine for the first 3 hours, followed by antigen challenge during the subsequent 2 hours. RESULTS: Findings showed: (1) fibrinopeptide A levels were higher at antigen challenge sites than at codeine challenge sites by the third hour, with these levels at both sites greater than those at buffer sites; (2) antigen challenge of the previous codeine sites during the third to fifth hours led to a further increase in fibrinopeptide A levels; (3) fibrinopeptide A levels correlated with chamber fluid immunoglobulin G levels but not with chamber fluid histamine levels. CONCLUSIONS: Because antigen and codeine both activate mast cells prominently, these findings suggest that other factors play a role in the persistent fibrin formation at allergic skin reaction sites. Because antigen activates both basophils and mast cells and codeine only activates mast cells, we conclude that both basophils and mast cells contribute to the persistent fibrin formation at sites of allergic reactions.

Antigens

Codeine and aspirin analgesia in postpartum uterine cramps: qualitative aspects of quantitative assessments.

The analgesic response to codeine of patients with postpartum uterine-cramp pain has recently met with controversy. To readdress this question, we conducted a new study comparing codeine sulfate, 60 mg (N = 32) and 120 mg (N = 31), with aspirin, 650 mg (N = 34), and placebo (N = 32) in hospitalized women with moderate or severe postpartum uterine cramps treated with single oral doses in a parallel, stratified, randomized, double-blind trial. Subjective reports were used as indices of response, and patients rated pain intensity, pain relief, and side effects at periodic, uniformly conducted interviews for 6 hr. Most measures of analgesia exhibited important differences among the treatments. In patients with undifferentiated pain (N = 129) and in a subset of patients with pure uterine cramps (N = 56; i.e., no concomitant episiotomy), aspirin showed the greatest response, whereas codeine responses were equivocal with no evidence of a positive dose response. In contrast, in a subset of patients with mixed episiotomy-uterine pain (N = 73), 120 mg codeine showed good separation from placebo and compared favorably with aspirin. Codeine, 60 mg, showed a similar trend, and there was a strong suggestion of dose-dependent analgesia. Side effects were not remarkable except for dizziness and drowsiness after 120 mg codeine in all sets and subsets of patients.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent

Polymorphic formation of morphine from codeine in poor and extensive metabolizers of dextromethorphan: relationship to the presence of immunoidentified cytochrome P-450IID1.

We studied the oxidation capacity in liver biopsies of a series of extensive metabolizers (n = 10) and poor metabolizers (n = 2) as identified by in vivo phenotyping with dextromethorphan. Codeine and dextromethorphan were used as probe drugs in vitro. The data were compared with the contents of cytochrome P-450IID1 as quantitated by Western immunoblotting by use of a specific monoclonal antibody (MAb 114/2). The O-demethylation of codeine was highly correlated with the O-demethylation of dextromethorphan (r = 0.90). The N-demethylation of codeine was catalyzed at a considerably higher rate than the O-demethylation. The N-demethylation to O-demethylation ratio of codeine was 46 in the poor metabolizer and, on average, 6.2 (range, 2.6 to 11) in the extensive metabolizers, respectively. The band intensity in Western blots correlated with the rate of O-demethylation of codeine (r = 0.95) and of dextromethorphan (r = 0.88) in the extensive metabolizers. The comeasurement of the O-demethylation and N-demethylation of codeine may provide a tool with which to phenotype individuals in vitro with respect to the polymorphism of the cytochrome P-450IID1.

Antibodies, Monoclonal

Simultaneous determination of morphine and codeine in blood and bile using dual ultraviolet and fluorescence high-performance liquid chromatography.

The separation and identification of morphine and codeine from postmortem blood and bile was accomplished using a liquid-phase extraction method followed by reversed-phase high-performance liquid chromatography with combined UV and fluorescence detection. Identification of morphine and codeine was based on relative retention time matching with calibration standards, together with their fluorescence-to-UV response ratios. Linear calibration curves for morphine and codeine ranged from 0.10 to 3.0 mg/L for blood and 5.0 to 100 mg/L for bile. Morphine concentrations (in autopsy cases), where the intravenous use of heroin or morphine was suspected as the cause of death, were 0.10-0.89 mg/L (mean, 0.29 mg/L) for blood and 3.3-112 mg/L (mean, 38 mg/L) for bile. Codeine concentrations, where therapeutic use or overdosage of codeine occurred, were 0.06-6.4 mg/L (mean, 1.5 mg/L) in blood and 0.22-89 mg/L (mean, 24 mg/L) in bile. This method allowed simultaneous detection of morphine and codeine from blood and bile with little interference from extraneous peaks. The procedure described provides a selective, sensitive, accurate, and reliable method suitable for both clinical and forensic toxicology.

Bile

A sex difference in the effects of oral codeine and promethazine on the ventilatory response to carbon dioxide in human volunteers.

1 Interactions between codeine and promethazine have been studied in male and female volunteers, measuring ventilation, end tidal PCO2, ventilatory response to CO2, pulse and blood pressure. 2 The effects of codeine on the above measurements have been compared in subjects who habitually smoke cigarettes and non smoking subjects. 3 Codeine displaced the ventilatory response to CO2 to the right and increased end tidal PCO2 in female subjects but not in males. 4 Promethazine plus codeine displaced the ventilatory response to CO2 to the right in male subjects but tended to reduce the response to codeine in females. 5 The slope of the ventilatory response to CO2 was significantly steeper in smokers and codeine caused significant reductions in slope in these subjects.

Adult